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by the dissymmetry factor, g_Lum. To date, major efforts have been devoted to develop CPL-active organic systems,[1,2] yet their gLum values are typically unsatisfactorily low. On the other hand
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, workshops, and conferences, providing opportunities for professional development and scientific exchange. This collaborative dynamic, combined with the location in Grenoble, Where to apply Website https
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the activity and stability of iridium oxide-based catalysts supported on various materials within a PEM electrolysis cell. Catalyst layers and membrane-electrode assemblies will be prepared and characterized in
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biomass. The postdoctoral researcher at CERMAV will: • Characterize the topochemistry of the action of these enzyme mimics on model compounds and under real-world conditions. • Develop new functional
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the catalytic performance of these materials for the cycloaddition of CO₂ to epoxides, assessing both catalytic activity and enantioselectivity. She/he will also complete the characterization of the catalytic
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The postdoctoral researcher will develop a novel active remote sensing method for the detection and characterization of stratospheric aerosols by adapting the AEROTYPro/GRASP methodology to observations from
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/motivic/... cohomology) - Writing articles - Participation in the activities of the team (seminars, study groups, etc) and in international conferences. Laboratoire de Mathematiques d'Orsay Where to apply
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collaborative research project on the topic of neuromorphic photonics using organic materials. Research activities include: - Design and modeling of integrated photonic components using electromagnetic simulation
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analyze multi-omic data provided by our collaborative partners and interpret the results from a biologically relevant perspective. Planned activities include Python code development, the analysis and
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internships and contribute to the supervision of PhD students. * Participate in the activities of the associated European and national research projects. REFIMEVE is a national research infrastructure dedicated